Please use this identifier to cite or link to this item:http://hdl.handle.net/20.500.12105/7541
Title
Human pre-valvular endocardial cells derived from pluripotent stem cells recapitulate cardiac pathophysiological valvulogenesis
Author(s)
Neri, Tui | Hiriart, Emilye | van Vliet, Patrick P | Faure, Emilie | Norris, Russell A | Farhat, Batoul | Jagla, Bernd | Lefrancois, Julie | Sugi, Yukiko | Moore-Morris, Thomas | Zaffran, Stéphane | Faustino, Randolph S | Zambon, Alexander C | Desvignes, Jean-Pierre | Salgado, David | Levine, Robert A | de la Pompa, Jose Luis CNIC | Terzic, André | Evans, Sylvia M | Markwald, Roger | Pucéat, Michel
Date issued
2019
Citation
Nat Commun. 2019; 10(1):1929
Language
Inglés
Abstract
Genetically modified mice have advanced our understanding of valve development and disease. Yet, human pathophysiological valvulogenesis remains poorly understood. Here we report that, by combining single cell sequencing and in vivo approaches, a population of human pre-valvular endocardial cells (HPVCs) can be derived from pluripotent stem cells. HPVCs express gene patterns conforming to the E9.0 mouse atrio-ventricular canal (AVC) endocardium signature. HPVCs treated with BMP2, cultured on mouse AVC cushions, or transplanted into the AVC of embryonic mouse hearts, undergo endothelial-to-mesenchymal transition and express markers of valve interstitial cells of different valvular layers, demonstrating cell specificity. Extending this model to patient-specific induced pluripotent stem cells recapitulates features of mitral valve prolapse and identified dysregulation of the SHH pathway. Concurrently increased ECM secretion can be rescued by SHH inhibition, thus providing a putative therapeutic target. In summary, we report a human cell model of valvulogenesis that faithfully recapitulates valve disease in a dish.
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